Patents by Inventor Per-Olof Borgqvist

Per-Olof Borgqvist has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20240001013
    Abstract: A mobile dialysis fluid generation system includes a cargo unit configured to be transported by a vehicle; a cleanroom located inside the cargo unit; water purification equipment; at least one dialysis fluid preparation unit located inside the cleanroom; and at least one area provided outside the cleanroom but inside the cargo unit for storing at least one of a raw material or containers filled with dialysis fluid. The at least one dialysis fluid preparation unit includes at least one concentrate, a mixing device configured to receive purified water from the water purification equipment and to mix the purified water with the at least one concentrate to form dialysis fluid, a tubing set for transfer of the dialysis fluid from the mixing device to a container positioned and arranged to receive the dialysis fluid.
    Type: Application
    Filed: October 21, 2021
    Publication date: January 4, 2024
    Inventors: James White, Jonas FORS, Fréderic Vandemaele, Stefano Ganzerli, Olof Jansson, Thomas Hertz, Michael Pettersson, Per-Olof Borgqvist, Sven Gustafson, Roland Persson, Jonas Alson, Anna Szilagyi
  • Publication number: 20230414852
    Abstract: A peritoneal dialysis (“PD”) system includes a PD fluid pump, a disinfection loop including the PD fluid pump, the disinfection loop including PD fluid used for disinfecting the disinfection loop, and an acid solution source positioned and arranged to supply an acid solution to the disinfection loop during disinfection using the PD fluid. The disinfection loop includes an airtrap and a pressure sensor positioned and arranged to sense PD fluid pressure during disinfection, the pressure sensor outputting to a control unit, the control unit configured to open at least one gas valve located along at least one gas line leading to an upper portion of the airtrap when the PD fluid pressure reaches or exceeds a threshold PD fluid pressure due to gas formation caused by mixing the acid solution with the PD fluid.
    Type: Application
    Filed: June 15, 2023
    Publication date: December 28, 2023
    Inventors: Oskar Erik Frode Styrbjörn Fällman, Per-Olof Borgqvist, Bjorn Ericson, Markus Nilsson
  • Publication number: 20230405196
    Abstract: A peritoneal dialysis fluid generation system including water purification equipment configured to provide purified water; a presterilized tubing set including a container for storing peritoneal dialysis fluid; at least one glucose or buffer concentrate; and a hemodialysis machine in fluid communication with the water purification equipment. The hemodialysis machine includes at least one mixing pump for mixing the at least one glucose or buffer concentrate with the purified water to form peritoneal dialysis fluid, a dialysis fluid pump for delivering the peritoneal dialysis fluid to the container, and a control unit configured to control the at least one mixing pump to form the peritoneal dialysis fluid and the dialysis fluid pump to deliver the peritoneal dialysis fluid to the container.
    Type: Application
    Filed: October 21, 2021
    Publication date: December 21, 2023
    Inventors: James WHITE, Jonas FORS, Fréderic VANDEMAELE, Stefano GANZERLI, Olof JANSSON, Thomas HERTZ, Michael PETTERSSON, Per-Olof BORGQVIST, Sven GUSTAFSON, Roland PERSSON, Jonas ALSON, Anna SZILAGYI
  • Publication number: 20230390473
    Abstract: A medical fluid generation system is disclosed. In an example, a peritoneal dialysis fluid generation system includes water purification equipment configured to provide purified water; a presterilized tubing set including a container for storing peritoneal dialysis fluid; at least one glucose or buffer concentrate; and a hemodialysis machine in fluid communication with the water purification equipment. The hemodialysis machine includes at least one mixing pump for mixing the at least one glucose or buffer concentrate with the purified water to form peritoneal dialysis fluid, a dialysis fluid pump for delivering the peritoneal dialysis fluid to the container, and a control unit configured to control the at least one mixing pump to form the peritoneal dialysis fluid and the dialysis fluid pump to deliver the peritoneal dialysis fluid to the container.
    Type: Application
    Filed: October 21, 2021
    Publication date: December 7, 2023
    Inventors: James WHITE, Jonas FORS, Fréderic VANDEMAELE, Stefano GANZERLI, Olof JANSSON, Thomas HERTZ, Michael PETTERSSON, Per-Olof BORGQVIST, Sven GUSTAFSON, Roland PERSSON, Jonas ALSON, Anna SZILAGYI
  • Publication number: 20230381389
    Abstract: A mobile dialysis fluid generation system includes a cargo unit configured to be transported by a vehicle; a cleanroom located inside the cargo unit; water purification equipment; at least one dialysis fluid preparation unit located inside the cleanroom; and at least one area provided outside the cleanroom but inside the cargo unit for storing at least one of a raw material or containers filled with dialysis fluid. The at least one dialysis fluid preparation unit includes at least one concentrate, a mixing device configured to receive purified water from the water purification equipment and to mix the purified water with the at least one concentrate to form dialysis fluid, and a tubing set for transfer of the dialysis fluid from the mixing device to a container positioned and arranged to receive the dialysis fluid.
    Type: Application
    Filed: October 21, 2021
    Publication date: November 30, 2023
    Inventors: James WHITE, Jonas FORS, Fréderic VANDEMAELE, Stefano GANZERLI, Olof JANSSON, Thomas HERTZ, Michael PETTERSSON, Per-Olof BORGQVIST, Sven GUSTAFSON, Roland PERSSON, Jonas ALSON, Anna SZILAGYI
  • Publication number: 20230347034
    Abstract: A test method determines at least one status parameter of an individual undergoing peritoneal dialysis. The status parameter(s) may include a transport property of the peritoneum, a tonicity, or a residual volume. The test method includes receiving first data indicative of a flow rate as a function of time of a treatment fluid into and out of a peritoneal cavity during a test procedure, and second data comprising measured data samples representing a concentration of one or more solutes in the treatment fluid at time points during the test procedure. The test method also includes computing, based on the first data and by use of a transport model for a peritoneal membrane, estimated data samples representing the concentration of the one or more solutes in the treatment fluid at the time points and determining the status parameter(s) as a function of the measured data samples and the estimated data samples.
    Type: Application
    Filed: September 2, 2021
    Publication date: November 2, 2023
    Inventors: Per-Olof BORGQVIST, Carl ÖBERG, Karin BERGLING
  • Publication number: 20230285647
    Abstract: A renal failure therapy system includes a fresh dialysis fluid tube having a connector for connecting to a dialyzer, a spent dialysis fluid tube having a connector for connecting to the dialyzer, a dialysis fluid circuit including a fresh dialysis fluid line, a spent dialysis fluid line, at least one of (i) a first disinfection device positioned between the fresh dialysis fluid line and the fresh dialysis fluid tube, or (ii) a second disinfection device positioned between the spent dialysis fluid line and the spent dialysis fluid tube and recirculation circuitry extending to a first machine connector for mating with the connector of the fresh dialysis fluid tube during disinfection and a second machine connector for mating with the connector of the spent dialysis fluid tube during disinfection. The system also includes a control unit configured to cause the first and second disinfection devices to be energized during the disinfection.
    Type: Application
    Filed: June 23, 2021
    Publication date: September 14, 2023
    Inventors: Per-Olof BORGQVIST, Olof JANSSON
  • Publication number: 20230248889
    Abstract: A peritoneal dialysis (“PD”) system includes a plurality of PD fluid components, a reusable PD fluid line selectively fluidly communicating with the PD fluid components, a source of PD fluid selectively fluidly communicating with the reusable PD fluid line, a source of anti-scaling fluid selectively fluidly communicating with the reusable PD fluid line, and a control unit configured to (i) operate the plurality of PD fluid components during treatment using PD fluid from the source heated to a treatment temperature, and (ii) circulate unused PD fluid heated to a disinfection temperature in combination with anti-scaling fluid from the source of anti-scaling fluid after treatment for disinfecting the plurality of PD fluid components and the reusable PD fluid line, the anti-scaling fluid provided in an amount configured to lower the pH of the unused PD fluid to a level below which precipitates are formed and above which the pH causes disinfection.
    Type: Application
    Filed: December 28, 2022
    Publication date: August 10, 2023
    Inventors: Markus Nilsson, Michael Pettersson, Oskar Erik Frode Styrbjorn Fallman, Per-Olof Borgqvist, Sophie Sandblad
  • Publication number: 20230154305
    Abstract: A peritoneal dialysis system includes a control unit configured to (i) store a sleep state pattern for the patient, (ii) begin a patient drain followed by a patient fill when at least one sensor indicates that the patient is in a deep sleep state, (iii) extend a dwell period if the sleep state pattern indicates that the patient will enter a subsequent deep sleep state within a first time duration after a programmed dwell period, and (iv) shorten the dwell period if the sleep state pattern indicates that the patient will leave the deep sleep state within a second time duration after an end of the programmed dwell period. The system alternatively or additionally assesses or records a stress level of and/or a fluid/caloric intake by the patient and takes actions accordingly.
    Type: Application
    Filed: November 11, 2022
    Publication date: May 18, 2023
    Inventors: Vishnu Shyam, Sven Gustafson, Mikael Lindhult, Per-Olof Borgqvist, Peter Drennan, Mattias Holmer, Jeshrene Enerio, Elizabeth Ashley Mensing, Shawn Collin Oppegard, Nicole Alexandra Chen, Arvind Mishra, Anders Wellings, Leah Swanson, Richard Zanni, Joan Angela Cianciolo, Jorge Augusto Del Castillo, Matthew Muller, Bhavesh Padmani
  • Publication number: 20230069896
    Abstract: A system for producing fluid for peritoneal dialysis (PD) is disclosed. The system includes a fluid path including two or more PD concentrate connectors that are each connected to a source of PD concentrate fluid, and an inlet connector connected to a fluid line arranged for transportation of effluent fluid from a patient. The system also includes a forward osmosis (FO)-unit including a draw side and a feed side separated by a FO-membrane. The FO-unit is fluidly connected to the fluid path and receives one or more PD concentrate fluids at the draw side and the effluent at the feed side. Water is transported from the effluent to the one or more PD concentrate fluids through the FO-membrane via an osmotic pressure gradient between the draw side and the feed side, thereby diluting the one or more PD concentrate fluids into a diluted PD concentrate fluid.
    Type: Application
    Filed: February 5, 2021
    Publication date: March 9, 2023
    Inventors: Christian Vartia, Henrik Lindgren, Per-Olof Borgqvist, Olof Jansson
  • Publication number: 20230040372
    Abstract: A system and method for producing fluid for peritoneal dialysis (PD) is disclosed. The system comprises a fluid path including one or more PD-concentrate connectors each connected to one or more sources of PD-concentrate fluid, and a water connector connected to a source of water. The system further includes a forward osmosis FO-unit including a draw side and a feed side separated by a FO-membrane. The FO-unit is fluidly connected to the fluid path. The FO-unit receives the one or more PD-concentrate fluids at the draw side, and receives the water at the feed side. Purified water is transported to one or more PD-concentrate fluids through the FO-membrane by means of an osmotic pressure gradient between the draw side and the feed side. The transported purified water is further purified by the FO-membrane and the one or more PD-concentrate fluids is diluted to produce a diluted PD-concentrate fluid.
    Type: Application
    Filed: February 5, 2021
    Publication date: February 9, 2023
    Inventors: Christian Vartia, Henrik Lindgren, Per-Olof Borgqvist, Olof Jansson
  • Publication number: 20220347363
    Abstract: Methods, apparatuses, and systems for determining a correlation between intraperitoneal pressure (“IPP”) measurements and patient intraperitoneal volume (“IPV”) are disclosed. In an example, an apparatus is configured to determine a maximum fill volume of dialysate to be pumped into a peritoneal cavity of a patient. The apparatus also determines a plurality of iterations to achieve the maximum fill volume and a volume of the dialysate to be pumped for each of the iterations. For each iteration, the apparatus causes a dialysis machine to pump the dialysate to the peritoneal cavity based on the determined volume for that iteration, records IPP measurement output data from a pressure sensor, records or determines a total accumulated fill volume, and creates a data point for a personalized patient model corresponding to a correlation between the IPP measurement output data and the total accumulated fill volume.
    Type: Application
    Filed: May 2, 2022
    Publication date: November 3, 2022
    Inventors: Christian Antero Vartia, Carlos Alberto Corrales Nogales, Joanna Rita Yanaga, Jorge Del Castillo, Per-Olof Borgqvist, Anders Wallenborg, John Sterling Norman, Jeannette Aguilar, Madison Rachel Hedlund, Caesar Gudani